Stabilizing and Optimizing Control for Time-Delay Systems: Including Model Predictive Controls
Wook Hyun Kwon, Seoul National University;
PooGyeon Park, Pohang University of Science and Technology
Springer International Publishing, 2019
ISBN: 978-3-319-92703-9;
Language: English
Stabilizing and Optimizing Control for Time-Delay Systems introduces three important classes of stabilizing controls for time-delay systems: non-optimal (without performance criteria), suboptimal (including guaranteed costs), and optimal controls. Each class is treated in detail and compared in terms of prior control structures. State- and input-delayed systems are considered. The book provides a unified mathematical framework with common notation used throughout.
Receding-horizon, or model predictive, linear quadratic (LQ), linear-quadratic-Gaussian, and H∞ controls for time-delay systems are chosen as optimal stabilizing controls. Cost monotonicity is investigated in order to guarantee the asymptotic stability of closed-loop systems operating with such controls.
The authors use guaranteed LQ and H∞ controls as representative sub-optimal methods; these are obtained with pre-determined control structures and certain upper bounds of performance criteria. Non-optimal stabilizing controls are obtained with predetermined control structures but with no performance criteria. Recently developed inequalities are exploited to obtain less conservative results.
To facilitate computation, the authors use linear matrix inequalities to represent gain matrices for non-optimal and sub-optimal stabilizing controls, and all the initial conditions of coupled differential Riccati equations of optimal stabilizing controls. Numerical examples are provided with MATLAB codes and Simulink models available for download online to give readers guidance in working with more difficult optimal and suboptimal controls.
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